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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Investigation of influence of white layer geometry on spalling property in railway wheel steel
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Investigation of influence of white layer geometry on spalling property in railway wheel steel

机译:研究白层几何形状对铁路车轮钢剥落性能的影响

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Spalling is rolling contact fatigue (RCF) damages of railway wheels, as a result of unexpected wheel slides on a rail. The major characteristic in spalling is that fatigue cracks initiate from white layers. In this study, in order to evaluate the influence of the white layer geometries on spalling properties, RCF tests and elasto-plastic FEM analyses were carried out. Moreover, the Dang Van model, which is the multiaxial fatigue strength evaluation methods, was applied to predict the crack initiations in RCF tests. There are three main results from this study. Firstly, RCF tests yielded that the crack initiations were less in the smaller white layers than in the larger ones. In addition, the crack initiations of the matrices were less than those of the white layers. Secondly, FEM analysis results showed that the maximum stresses were lower in the smaller white layers than in the larger ones. This result corresponded to the crack initiation behaviours of RCF tests. Finally, the fatigue strength prediction results by the Dang Van model were reasonably equivalent to the RCF test results. Therefore, it was concluded that the crack initiations in spalling could be reduced by the smaller white layer.
机译:剥落是铁路车轮的滚动接触疲劳(RCF)损坏,这是由于车轮意外在轨道上滑动而导致的。剥落的主要特征是疲劳裂纹从白色层开始。在这项研究中,为了评估白层几何形状对剥落性能的影响,进行了RCF测试和弹塑性FEM分析。此外,Dang Van模型是多轴疲劳强度评估方法,用于预测RCF测试中的裂纹萌生。这项研究有三个主要结果。首先,RCF测试得出,较小的白色层的裂纹萌生少于较大的白色层。另外,基体的裂纹萌生小于白色层的裂纹萌生。其次,有限元分析结果表明,较小的白色层的最大应力低于较大的白色层。该结果对应于RCF测试的裂纹萌生行为。最后,Dang Van模型的疲劳强度预测结果与RCF测试结果相当。因此,得出的结论是,较小的白色层可以减少剥落中的裂纹萌生。

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